ArticleActa biomaterialia2017
Engineered myocardium model to study the roles of HIF-1α and HIF1A-AS1 in paracrine-only signaling under pathological level oxidative stress.
Article in Acta biomaterialia, 2017. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 20 papers.
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Who cites it
20 citing papers in PubMed, 29 citations in OpenAlex.
- Article
- Single-cell and deep learning identify hypoxia-responsive lncRNAs predicting outcomes in colorectal cancer.NPJ precision oncology · 2026Article
- The crosstalk between non-coding RNAs and oxidative stress in cancer progression.Genes & diseases · 2025Review
- Cell-cell interactions in the heart: advanced cardiac models and omics technologies.Stem cell research & therapy · 2024Review
- Review
- Advances in the design, generation, and application of tissue-engineered myocardial equivalents.Frontiers in bioengineering and biotechnology · 2023Review
- Mechanical response of cardiac microtissues to acute localized injury.American journal of physiology. Heart and circulatory physiology · 2022Article
- Myocardial infarction from a tissue engineering and regenerative medicine point of view: A comprehensive review on models and treatments.Biophysics reviews · 2022Review
- Human Heart Anoxia and Reperfusion Tissue (HEART) Model for the Rapid Study of Exosome Bound miRNA Expression As Biomarkers for Myocardial Infarction.Small (Weinheim an der Bergstrasse, Germany) · 2022Article
- Adipose stem cell secretome markedly improves rodent heart and human induced pluripotent stem cell-derived cardiomyocyte recovery from cardioplegic transport solution exposure.Stem cells (Dayton, Ohio) · 2021Article
- Long Non-Coding RNAs in Oral Submucous Fibrosis: Their Functional Mechanisms and Recent Research Progress.Journal of inflammation research · 2021Review
- The pro-apoptosis and pro-inflammation role of LncRNA HIF1A-AS1 in Coxsackievirus B3-induced myocarditis via targeting miR-138.Cardiovascular diagnosis and therapy · 2020Article
- Human Cell Modeling for Cardiovascular Diseases.International journal of molecular sciences · 2020Review
- Breast cancer models: Engineering the tumor microenvironment.Acta biomaterialia · 2020Review
- Technical Feasibility and Physiological Relevance of Hypoxic Cell Culture Models.Frontiers in endocrinology · 2020Review
- In vitro aged, hiPSC-origin engineered heart tissue models with age-dependent functional deterioration to study myocardial infarction.Acta biomaterialia · 2019Article
- CRISPR/Cas9 Edited Induced Pluripotent Stem Cell-Based Vascular Tissues to Model Aging and Disease-Dependent Impairment.Tissue engineering. Part A · 2019Article
- Interdependence theory of tissue failure: bulk and boundary effects.Royal Society open science · 2018Article
- Transcriptome profiling of 3D co-cultured cardiomyocytes and endothelial cells under oxidative stress using a photocrosslinkable hydrogel system.Acta biomaterialia · 2017Article
- Human iPSC-derived myocardium-on-chip with capillary-like flow for personalized medicine.Biomicrofluidics · 2017Article
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2 authors at 1 institution in 1 country.
Funding
Abstract
Studying heart tissue is critical for understanding and developing treatments for cardiovascular diseases. In this work, we fabricated precisely controlled and biomimetic engineered model tissues to study how cell-cell and cell-matrix interactions influence myocardial cell survival upon exposure to pathological level oxidative stress. Specifically, the interactions of endothelial cells (ECs) and cardiomyocytes (CMs), and the role of hypoxia inducible factor-1α (HIF-1α), with its novel alternative regulator, HIF-1α antisense RNA1 (HIF1A-AS1), in these interactions were investigated. We encapsulated CMs in photo-crosslinkable, biomimetic hydrogels with or without ECs, then exposed to oxidative stress followed by normoxia. With precisely controlled microenvironment provided by the model tissues, cell-cell interactions were restricted to be solely through the secreted factors. CM survival after oxidative stress was significantly improved, in the presence of ECs, when cells were in the model tissues that were functionalized with cell attachment motifs. Importantly, the cardioprotective effect of ECs was reduced when HIF-1α expression was knocked down suggesting that HIF-1α is involved in cardioprotection from oxidative damage, provided through secreted factors conferred by the ECs. Using model tissues, we showed that cell survival increased with increased cell-cell communication and enhanced cell-matrix interactions. In addition, whole genome transcriptome analysis showed, for the first time to our knowledge, a possible role for HIF1A-AS1 in oxidative regulation of HIF-1α. We showed that although HIF1A-AS1 knockdown helps CM survival, its effect is overridden by CM-EC bidirectional interactions as we showed that the conditioned media taken from the CM-EC co-cultures improved CM survival, regardless of HIF1A-AS1 expression. STATEMENT OF SIGNIFICANCE: Cardiovascular diseases, most of which are associated with oxidative stress, is the most common cause of death worldwide. Thus, understanding the molecular events as well as the role of intercellular communication under oxidative stress is upmost importance in its prevention. In this study we used 3D engineered tissue models to investigate the role of HIF-1α and its regulation in EC-mediated cardioprotection. We showed that EC-mediated protection is only possible when there is a bidirectional crosstalk between ECs and CMs even without physical cell-cell contact. In addition, this protective effect is at least partially related to cell-ECM interactions and HIF-1α, which is regulated by HIF1A-AS1 under oxidative stress.
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Registered trials
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